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Unbound water in mechanochemical reactions of brown coal

Mechanochemical activation of coal is commonly employed in industry. However, even the simplest solid-phase reactions, such as neutralization of humic acids in brown coal, remain insufficiently studied. The hypothesis regarding the occurrence of mechanochemical neutralization under local hydrotherma...

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Autores principales: Skripkina, Tatiana, Ulihin, Artem, Bychkov, Aleksey, Mamylov, Sergey, Podgorbunskikh, Ekaterina, Lomovskiy, Igor, Lomovsky, Oleg
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9054397/
https://www.ncbi.nlm.nih.gov/pubmed/35518752
http://dx.doi.org/10.1039/d0ra03131c
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author Skripkina, Tatiana
Ulihin, Artem
Bychkov, Aleksey
Mamylov, Sergey
Podgorbunskikh, Ekaterina
Lomovskiy, Igor
Lomovsky, Oleg
author_facet Skripkina, Tatiana
Ulihin, Artem
Bychkov, Aleksey
Mamylov, Sergey
Podgorbunskikh, Ekaterina
Lomovskiy, Igor
Lomovsky, Oleg
author_sort Skripkina, Tatiana
collection PubMed
description Mechanochemical activation of coal is commonly employed in industry. However, even the simplest solid-phase reactions, such as neutralization of humic acids in brown coal, remain insufficiently studied. The hypothesis regarding the occurrence of mechanochemical neutralization under local hydrothermal conditions for humic acids in brown coal has been tested in this study. 3D modelling of the “block–interlayer” system (where coal particles are separated by air interlayers saturated with water vapor) was used. The 3D model showed that the permittivity is expected to rise from 14 to 16% as the moisture content in the system increases from 12 to 15%. The actual permittivities of coal with different moisture contents have been measured by dielectric spectroscopy. In the real system, the permittivity increases more than threefold as the moisture content rises from 12 to 15%. This increase is much greater than the calculated one, demonstrating that the phase containing unbound water appears in the system at a moisture content of ∼12–13% and may exert various effects on the solid-phase reaction. There is a correlation between the moisture content, permittivity, and predominant mechanisms of the reaction between the organic matter in brown coal and sodium percarbonate (a reagent simultaneously containing the alkaline and peroxidic components). The reactions between brown coal and alkaline reagents proceed under local hydrothermal conditions. Both the alkaline and peroxidic components of sodium percarbonate participate in the solid-phase reaction between brown coal and sodium percarbonate. The emergence of unbound water in coal significantly inhibits the oxidation reaction.
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spelling pubmed-90543972022-05-04 Unbound water in mechanochemical reactions of brown coal Skripkina, Tatiana Ulihin, Artem Bychkov, Aleksey Mamylov, Sergey Podgorbunskikh, Ekaterina Lomovskiy, Igor Lomovsky, Oleg RSC Adv Chemistry Mechanochemical activation of coal is commonly employed in industry. However, even the simplest solid-phase reactions, such as neutralization of humic acids in brown coal, remain insufficiently studied. The hypothesis regarding the occurrence of mechanochemical neutralization under local hydrothermal conditions for humic acids in brown coal has been tested in this study. 3D modelling of the “block–interlayer” system (where coal particles are separated by air interlayers saturated with water vapor) was used. The 3D model showed that the permittivity is expected to rise from 14 to 16% as the moisture content in the system increases from 12 to 15%. The actual permittivities of coal with different moisture contents have been measured by dielectric spectroscopy. In the real system, the permittivity increases more than threefold as the moisture content rises from 12 to 15%. This increase is much greater than the calculated one, demonstrating that the phase containing unbound water appears in the system at a moisture content of ∼12–13% and may exert various effects on the solid-phase reaction. There is a correlation between the moisture content, permittivity, and predominant mechanisms of the reaction between the organic matter in brown coal and sodium percarbonate (a reagent simultaneously containing the alkaline and peroxidic components). The reactions between brown coal and alkaline reagents proceed under local hydrothermal conditions. Both the alkaline and peroxidic components of sodium percarbonate participate in the solid-phase reaction between brown coal and sodium percarbonate. The emergence of unbound water in coal significantly inhibits the oxidation reaction. The Royal Society of Chemistry 2020-06-03 /pmc/articles/PMC9054397/ /pubmed/35518752 http://dx.doi.org/10.1039/d0ra03131c Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Skripkina, Tatiana
Ulihin, Artem
Bychkov, Aleksey
Mamylov, Sergey
Podgorbunskikh, Ekaterina
Lomovskiy, Igor
Lomovsky, Oleg
Unbound water in mechanochemical reactions of brown coal
title Unbound water in mechanochemical reactions of brown coal
title_full Unbound water in mechanochemical reactions of brown coal
title_fullStr Unbound water in mechanochemical reactions of brown coal
title_full_unstemmed Unbound water in mechanochemical reactions of brown coal
title_short Unbound water in mechanochemical reactions of brown coal
title_sort unbound water in mechanochemical reactions of brown coal
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9054397/
https://www.ncbi.nlm.nih.gov/pubmed/35518752
http://dx.doi.org/10.1039/d0ra03131c
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